Norimoto Yanagawa
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Explore the profile of Norimoto Yanagawa including associated specialties, affiliations and a list of published articles.
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18
Citations
153
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Recent Articles
1.
Hauser P, Zhao L, Chang H, Yanagawa N, Hamon M
Tissue Eng Part C Methods
. 2023 Dec;
30(2):63-72.
PMID: 38062758
A major obstacle to the implantation of engineered tissues is the incorporation of functional vascular supply to support the growth of new tissue and to minimize ischemic injury. Existing prevascularization...
2.
Hamon M, Cheng H, Johnson M, Yanagawa N, Hauser P
Bioengineering (Basel)
. 2022 Dec;
9(12).
PMID: 36551007
During early developmental stages, embryonic kidneys are not fully vascularized and are potentially exposed to hypoxic conditions, which is known to influence cell proliferation and survival, ureteric bud branching, and...
3.
Hauser P, Chang H, Nishikawa M, Kimura H, Yanagawa N, Hamon M
Bioengineering (Basel)
. 2021 Nov;
8(11).
PMID: 34821744
In recent years, tissue engineering has achieved significant advancements towards the repair of damaged tissues. Until this day, the vascularization of engineered tissues remains a challenge to the development of...
4.
Nishikawa M, Yanagawa N
Methods Mol Biol
. 2020 Jul;
2161:29-36.
PMID: 32681503
Despite recent advance in our understanding on the role of long noncoding RNAs (lncRNAs), the function of the vast majority of lncRNAs remains poorly understood. To characterize the function of...
5.
Nishikawa M, Yuri S, Kimura H, Yanagawa N, Hamon M, Hauser P, et al.
Biochim Biophys Acta Gene Regul Mech
. 2018 Nov;
1862(1):58-70.
PMID: 30416088
Emerging evidence from recent studies has unraveled the roles of long noncoding RNAs (lncRNAs) in the function of various tissues. However, little is known about the roles of lncRNAs in...
6.
Kimura H, Nishikawa M, Yanagawa N, Nakamura H, Miyamoto S, Hamon M, et al.
Biomicrofluidics
. 2018 Jul;
12(4):044107.
PMID: 30034570
Most kidney cells are continuously exposed to fluid shear stress (FSS) from either blood flow or urine flow. Recent studies suggest that changes in FSS could contribute to the function...
7.
Nishikawa M, Kimura H, Yanagawa N, Hamon M, Hauser P, Zhao L, et al.
Biochem Biophys Res Commun
. 2018 May;
501(4):996-1002.
PMID: 29777692
Kidney organoid is an emerging topic of importance for research in kidney development and regeneration. Conventional culture systems for kidney organoids reported thus far use culture media containing serum, which...
8.
Yuri S, Nishikawa M, Yanagawa N, Jo O, Yanagawa N
Stem Cell Reports
. 2017 Jan;
8(2):401-416.
PMID: 28089670
A method to maintain and rebuild ureteric bud (UB)-like structures from UB cells in vitro could provide a useful tool for kidney regeneration. We aimed in our present study to...
9.
Yuri S, Nishikawa M, Yanagawa N, Jo O, Yanagawa N
PLoS One
. 2015 Jun;
10(6):e0129242.
PMID: 26075891
Knowledge on how to maintain and expand nephron progenitor cells (NPC) in vitro is important to provide a potentially valuable source for kidney replacement therapies. In our present study, we...
10.
Hauser P, Nishikawa M, Kimura H, Fujii T, Yanagawa N
J Tissue Eng Regen Med
. 2014 Jan;
10(9):762-71.
PMID: 24478178
Developmental engineering is a potential option for neo-organogenesis of complex organs such as the kidney. The application of this principle requires the ability to construct a tubular structure from dispersed...